期刊文献+

Kinematic characterization and optimization of vehicle front-suspension design based on ADAMS 被引量:2

Kinematic characterization and optimization of vehicle front-suspension design based on ADAMS
下载PDF
导出
摘要 To improve the suspension performance and steering stability of light vehicles, we built a kinematic simulation model of a whole independent double-wishbone suspension system by using ADAMS software, created random excitations of the test platforms of respectively the left and the right wheels according to actual running conditions of a vehicle, and explored the changing patterns of the kinematic characteristic parameters in the process of suspension motion. The irrationality of the suspension guiding mechanism design was pointed out through simulation and analysis, and the existent problems of the guiding mechanism were optimized and calculated. The results show that all the front-wheel alignment parameters, including the camber, the toe, the caster and the inclination, only slightly change within corresponding allowable ranges in design before and after optimization. The optimization reduces the variation of the wheel-center distance from 47.01 mm to a change of 8.28 mm within the allowable range of ?10 mm to 10 mm, promising an improvement of the vehicle steering stability. The optimization also confines the front-wheel sideways slippage to a much smaller change of 2.23 mm; this helps to greatly reduce the wear of tires and assure the straight running stability of the vehicle. To improve the suspension performance and steering stability of light vehicles, we built a kinematic simulation model of a whole independent double-wishbone suspension system by using ADAMS software, created random excitations of the test platforms of respectively the left and the right wheels according to actual running conditions of a vehicle, and explored the changing patterns of the kinematic characteristic parameters in the process of suspension motion. The irrationality of the suspension guiding mechanism design was pointed out through simulation and analysis, and the existent problems of the guiding mechanism were optimized and calculated. The results show that all the front-wheel alignment parameters, including the camber, the toe, the caster and the inclination, only slightly change within corresponding allowable ranges in design before and after optimization. The optimization reduces the variation of the wheel-center distance from 47.01 mm to a change of 8.28 mm within the allowable range of -10 mm to 10 mm, promising an improvement of the vehicle steering stability. The optimization also confines the front-wheel sideways slippage to a much smaller change of 2.23 mm; this helps to greatly reduce the wear of tires and assure the straight running stability of the vehicle.
作者 于海波
出处 《Journal of Chongqing University》 CAS 2008年第1期35-40,共6页 重庆大学学报(英文版)
基金 the Postdoctoral Science Foundation of China (No. 2004036396) the Foundation of 985- Automotive Engineering of Jilin University
关键词 车辆悬挂 车辆控制 乘坐平稳质量 运动学 vehicle suspension vehicle steering riding qualities independent double-wishbone suspension kinematic characteristic parameter wheel-center distance front-wheel sidewavs slippage
  • 相关文献

参考文献10

  • 1孙义杰,巢凯年.ADAMS/VIEW在汽车前悬架仿真应用及优化分析[J].西华大学学报(自然科学版),2005,24(6):13-17. 被引量:12
  • 2戴旭文,谷中丽,刘剑.汽车双横臂独立悬架的运动学分析和计算[J].车辆与动力技术,2002(2):29-33. 被引量:15
  • 3王其东,赵韩,李岩,祝少春.汽车双横臂式独立悬架机构运动特性分析[J].合肥工业大学学报(自然科学版),2001,24(6):1066-1071. 被引量:30
  • 4Reimpell J,Stoll H,Betzler JW.The automotivechassis:engineering principles[]..2001
  • 5Leite VJS,Peres PLD.Pole location control design of an active suspension system with uncertain parameters[].Vehicle System Dynamics.2005
  • 6Boada MJL,Boada BL,Castejon C.A fuzzy-based sus-pension vehicle depending on terrain[].International Journal of Vehicle Design.2005
  • 7Chou H,Andrea BD.Global vehicle control using dif-ferential braking torques and active suspension forces[].Vehicle System Dynamics.2005
  • 8Motoyama K,Yamanaka T.A study of suspension design using optimization technique and DOE[].International ADAMS User Conference.2000
  • 9Holdmann P,Kohn P,Moller B.Suspension kinematics and compliance-measuring and simulation[].SAEWorld Congress.1998
  • 10Slattengren J.Utilization of ADAMS to predict tracked vehicle performance[].Proceedings of SAEWorld Congress.2000

二级参考文献7

共引文献51

同被引文献7

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部